CHINESE JOURNAL OF ENERGETIC MATERIALS
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Effects of stoichiometric ratio and oxygen content of oxidizer on detonation process of gel gasoline
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1.The 210th Institute of the Sixth Academy of CASIC, Xi′an 710065, China;2.National Key Laboratory of Transient Physics, Nanjing University of Science & Technology, Nanjing 210094, China

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    Abstract:

    In order to study the influence of stoichiometric ratio and oxygen content of oxidant on detonation process of gelled gasoline/gas-phase oxidant, a three-dimensional two-phase detonation model of gelled gasoline and gas-phase oxidant was established, and the internal detonation process of pulse detonation engine was simulated numerically using conservation element and solving element method. The effect of stoichiometric ratio and oxygen content of oxidant on the formation time, formation distance, peak pressure and propagation velocity of detonation wave were analyzed. The numerical results indicated that when the stoichiometric ratio is lower than 1.15, the formation distance and time of detonation wave decrease with increasing of stoichiometric ratio, and the pressure peak and propagation velocity of detonation wave increase at the same time. When the stoichiometric ratio is of 1.15, the formation distance and time of detonation wave are 0.288 m and 278 μs, and the pressure peak and propagation velocity of detonation wave are 1.85 MPa and 1437 m·s-1, respectively. The pressure peak and propagation velocity of detonation wave increase with increasing oxygen content of oxidant, and when the oxygen content increases from 23% to 48%, the pressure peak and propagation velocity of detonation wave increase from 1.85MPa, 1437 m·s-1 to 2.85MPa, 1868 m·s-1, respectively.

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杨建鲁,翁春生,李娟,等.当量比及氧化剂含氧量对凝胶汽油爆轰过程的影响[J].含能材料,2021,29(1):13-19.
YANG Jian-lu, WENG Chun-sheng, LI Juan, et al. Effects of stoichiometric ratio and oxygen content of oxidizer on detonation process of gel gasoline[J]. Chinese Journal of Energetic Materials,2021,29(1):13-19.

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History
  • Received:June 14,2019
  • Revised:December 16,2020
  • Adopted:September 25,2019
  • Online: December 15,2020
  • Published: January 25,2021